Technical Field
[0001] The present invention relates to a method for detecting
Chlamydia trachomatis and a kit therefore.
Background Art
[0002] Chlamydia trachomatis is one of nongonococcal urethritis pathogens, and as a method of detecting it, a
method of amplifying a partial sequence of a cryptic plasmid existing in
Chlamydia trachomatis cells in a multiple copy number by a gene amplification method and detecting the
amplification product is known (Japanese Patent Nos.
2719225 and
3127135).
WO01/73129 relates to the use of "LOCI" technology to monitor amplification reactions, especially
polymerase chain reactions.
US6,004,826 relates to a process for amplifying and detecting any desired specific nucleic acid
sequence that exists in a nucleic acid or mixture thereof.
US5,232,829 relates to the synthesis of amplified biotin - labelled DNA target sequences of
Chlamydia trachomatis by polymerase chain reaction techniques.
EP0812921 A2 relates to amplification primers that are useful in assays for species-specific detection
of a target sequence in the cryptic plasmid of C.
trachomatis.
Disclosure of the Invention
[0003] An object of the present invention is to provide a method for quickly detecting
Chlamydia trachomatis with superior sensitivity and specificity and a kit therefor.
[0004] The inventors of the present invention found that, if PCR was performed with primers
designed for a specific region in the cryptic plasmid pLGV440 of
Chlamydia trachomatis, Chlamydia trachomatis could be quickly detected, and thus accomplished the present invention.
[0005] The present invention provides a method for detecting
Chlamydia trachomatis comprising performing PCR using DNA obtained from a sample as a template and detecting
an amplification product, wherein a primer pair used for PCR is designed on the basis
of the nucleotide sequences of the regions corresponding to the nucleotide numbers
5157 to 5201 and 5245 to 5276 in the nucleotide sequence of SEQ ID NO: 1 so that the
nucleotide sequence between the two regions can be amplified and wherein performing
PCR comprises annealing at a temperature of 64° to 68.2°C (detection method of the
present invention).
[0006] The present invention also provides a kit used for the method of the present invention,
that is, a kit for detection of
Chlamydia trachomatis by performing PCR using DNA obtained from a sample as a template, which comprises
a primer pair designed on the basis of the nucleotide sequences of the regions corresponding
to the nucleotide numbers 5157 to 5201 and 5245 to 5276 in the nucleotide sequence
of SEQ ID NO: 1 so that the nucleotide sequence between the two regions can be amplified
and wherein performing PCR comprises annealing at a temperature of 64° to 68.2°C(detection
kit of the present invention).
[0007] In the present invention, the primer pair preferably consists of an oligonucleotide
having an nucleotide sequence of SEQ ID NO: 2, 3 or 4 and an oligonucleotide having
a nucleotide sequence of SEQ ID NO: 5 or 6, more preferably an oligonucleotide having
the nucleotide sequence of SEQ ID NO: 3 and an oligonucleotide having the nucleotide
sequence of SEQ ID NO: 5, or an oligonucleotide having the nucleotide sequence of
SEQ ID NO: 4 and an oligonucleotide having the nucleotide sequence of SEQ ID NO: 6.
[0008] The present invention also provides a hybridization probe containing an oligonucleotide
designed on the basis of the nucleotide sequence of the region corresponding to the
nucleotide numbers 5210 to 5245 in the nucleotide sequence of SEQ ID NO: 1 and a label.
[0009] The nucleotide sequence of SEQ ID NO: 1 is the nucleotide sequence of the cryptic
plasmid pLGV440 of the
Chlamydia trachomatis (GenBank accession number X06707), and those skilled in the art can easily identify
and recognize the region specified by the nucleotide numbers of the nucleotide sequence
of SEQ ID NO: 1 also in a strain having a mutation in pLGV440 by taking difference
in the nucleotide sequence that may exist depending on individuals or the like into
consideration.
Brief Description of the Drawing
[0010] Fig. 1 shows a production time course of an amplification product (detection results
of real-time PCR): a: no copy, b: 2 copies, c: 20 copies, d: 200 copies, and e: 2000
copies.
Best Mode for Carrying out the Invention
<1> Detection method of the present invention
[0011] The detection method of the present invention is a method for detecting
Chlamydia trachomatis comprising performing PCR using DNA obtained from a sample as a template and detecting
an amplification product, wherein a primer pair used for PCR is designed on the basis
of the nucleotide sequences of the regions corresponding to the nucleotide numbers
5157 to 5201 and 5245 to 5276 in the nucleotide sequence of SEQ ID NO: 1 so that the
nucleotide sequence between the two regions can be amplified.
[0012] The sample is not particularly limited so long as it contains or possibly contains
Chlamydia trachomatis. Examples thereof include urine, urethra swab, cervical swab and so forth. From these
samples, DNA can be obtained by a usual method under conditions where DNA of the cryptic
plasmid of
Chlamydia trachomatis can be prepared.
[0013] PCR in the detection method of the present invention can be performed according to
a usual PCR procedure except that DNA obtained from the sample is used as a template,
and that the specific primer pair is used.
[0014] The primer pair used in the present invention is designed on the basis of a nucleotide
sequence of a region corresponding to the nucleotide numbers 5157 to 5201 in the nucleotide
sequence of SEQ ID NO: 1 (first region) and a nucleotide sequence of a region corresponding
to the nucleotide numbers 5245 to 5276 (second region) so that the nucleotide sequence
between the two regions can be amplified.
[0015] The length of the primers is usually 10 to 40 nucleotides. Further, the position
in each region and the length of the primers are preferably set so that the Tm value
should become 55 to 70°C, and thus the annealing temperature used in PCR can be set
to be relatively high. The Tm value used herein is a value calculated by the nearest
neighbor base pair analysis. The primers constituting the primer pair are preferably
designed to have substantially the same Tm values.
[0016] Specific examples of the primer designed on the basis of the first region include
a primer having the nucleotide sequence of SEQ ID NO: 2 (corresponding to the nucleotide
numbers 5157 to 5185 in the nucleotide sequence of SEQ ID NO: 1) or a nucleotide sequence
complementary thereto, a primer having the nucleotide sequence of SEQ ID NO: 3 (corresponding
to the nucleotide numbers 5171 to 5201 in the nucleotide sequence of SEQ ID NO: 1)
or a nucleotide sequence complementary thereto, and a primer having the nucleotide
sequence of SEQ ID NO: 4 (corresponding to the nucleotide numbers 5171 to 5196 in
the nucleotide sequence of SEQ ID NO: 1) or a nucleotide sequence complementary thereto.
Examples of the primer designed on the basis of the second region include a primer
having the nucleotide sequence of SEQ ID NO:5 (corresponding to the nucleotide numbers
5276 to 5252 in the nucleotide sequence of SEQ ID NO:1) or a nucleotide sequence complementary
thereto, and a primer having the nucleotide sequence of SEQ ID NO:6 (corresponding
to the nucleotide numbers 5276 to 5246 in the nucleotide sequence of SEQ ID NO: 1)
or a nucleotide sequence complementary thereto.
[0017] The primer pair is designed so that the nucleotide sequence between the two regions
can be amplified, that is, one primer should be a sense primer and the other primer
should be an antisense primer. Because the cryptic plasmid is a cyclic plasmid, it
has two nucleotide sequences between the two regions. However, the primers are usually
designed so that a shorter nucleotide sequence should be amplified.
[0018] Preferred examples of the primer pair include a combination of an oligonucleotide
having a nucleotide sequence of SEQ ID NO: 2, 3 or 4 and an oligonucleotide having
a nucleotide sequence of SEQ ID NO: 5 or 6. Further, more preferred examples of the
primer pair include a combination of an oligonucleotide having the nucleotide sequence
of SEQ ID NO: 3 and an oligonucleotide having the nucleotide sequence of SEQ ID NO:
5 and a combination of an oligonucleotide having the nucleotide sequence of SEQ ID
NO: 4 and an oligonucleotide having the nucleotide sequence of SEQ ID NO: 6.
[0019] The primer pair for the aforementioned specific regions can be designed by a method
known to those skilled in the art taking PCR conditions into consideration. The primer
pair can be designed by using a computer program for designing primers.
[0020] The primers may be designed as a mixing primer obtained by mixing two or more kinds
of primers for one or both of the sense primer and the antisense primer. When a mutation
of a nucleotide exists in the region for which the primer is designed, detection efficiency
can be improved by using a mixed primer.
[0021] Although the PCR conditions may be determined according to a usual PCR method, the
annealing temperature should be set to be relatively high due to the use of the aforementioned
specific primer pair. The annealing temperature is usually 50 to 70°C and comprises
64° to 68.2°C. Because the annealing temperature is relatively high, the conditions
for two-step PCR in which annealing and elongation are performed under the same conditions
may be determined.
[0022] A typical example of composition of the PCR reaction mixture is as follows.
- DNA fragments
- 1 molecule or more
- Primers
- 100 to 2000 nM
- Nucleotides
- 100 to 500 µM for each
- DNA polymerase
- 0.25 to 1.25 Units/µl
- Tris-HCl (pH 7 to 9)
- 1 to 5 mM
- MgCl2
- 1.5 to 5 mM
- Surfactant or gelatin
- 0 to 25%
(Final volume: 25 to 100 µl)
[0023] Further, a typical example of the temperature cycle is as follows, and such a temperature
cycle is usually repeated 30 to 60 times.
- (1) Denaturation: 90 to 95°C, 1 to 60 seconds
- (2) Annealing: 55 to 70°C, 6 to 60 seconds
- (3) Elongation: 72 to 75°C, 6 to 60 seconds
[0024] A typical example of the temperature cycle for the two-step PCR is as follows, and
this temperature cycle is usually repeated 30 to 60 times.
- (1) Denaturation: 90 to 95°C, 1 to 60 seconds
- (2) Annealing and elongation: 55 to 70°C, 6 to 60 seconds
[0025] In the detection method of the present invention, the amplification product can be
detected by a usual method for detecting amplification products. For example, the
amplification product may be detected by agarose gel electrophoresis, or by real time
PCR, in which PCR is performed in the presence of a substance of which fluorescence
changes when it binds to the amplification product (for example, a fluorescent dye
of which fluorescence intensity changes when it binds to a doublestranded DNA, a hybridization
probe designed so that it should hybridize with a single-stranded DNA, and fluorescence
intensity thereof should change due to fluorescence resonance energy transfer (FRET)
upon hybridization, and so forth), and then fluorescence is measured.
[0026] According to the detection method of the present invention, primers having a relatively
high Tm value can be designed for specified regions, and therefore the annealing temperature
used in PCR can be made relatively high. Accordingly, the time required to lower temperature
from the denaturation temperature to the annealing temperature is reduced. Further,
non-specific amplification is reduced due to the high annealing temperature. Furthermore,
two-step PCR in which annealing and elongation are performed under the same conditions
is also possible. As a result, quicker gene amplification is enabled.
[0027] The present invention also provides a hybridization probe suitable for detection
by hybridization. Examples of such a hybridization probe include a probe comprising
an oligonucleotide designed on the basis of a nucleotide sequence of a region corresponding
to the nucleotide numbers 5210 to 5245 in the nucleotide sequence of SEQ ID NO: 1
and a label. This oligonucleotide may be complementary to a sense chain or complementary
to an antisense chain.
[0028] The chain length and Tm value of the oligonucleotide of the hybridization probe are
suitably determined depending on the hybridization conditions. The length of this
oligonucleotide is usually 25 to 45 nucleotides, and the Tm value is usually 50 to
70°C. When the hybridization probe is used for real-time PCR, the Tm value of the
oligonucleotide is preferably set to be higher than the Tm value of the primer by
2 to 5°C so that the probe should hybridize with a target sequence before hybridization
of the primer. Examples of such an oligonucleotide include an oligonucleotide having
the nucleotide sequence of SEQ ID NO: 7.
[0029] The hybridization probe can be labeled in such a manner that the hybridization should
not be inhibited under the hybridization conditions. The hybridization probe for real-time
PCR is preferably labeled in such a manner that fluorescence intensity should change
when it hybridizes with a single-stranded DNA.
[0030] In the detection method of the present invention, the amplification product is preferably
detected by a detection method using the hybridization probe of the present invention.
<2> Detection kit of the present invention
[0031] The detection kit of the present invention is a kit usable for the detection method
of the present invention, that is, a kit for detection of
Chlamydia trachomatis by performing PCR using DNA obtained from a sample as a template, which is characterized
by including a primer pair designed on the basis of the nucleotide sequences of the
regions corresponding to the nucleotide numbers 5157 to 5201 and 5245 to 5276 in the
nucleotide sequence of SEQ ID NO: 1 so that the nucleotide sequence between the two
regions can be amplified, and wherein performing PCR comprises annealing at a temperature
of 64° to 68.2°C.
[0032] The primer pair is as described above with regard to the detection method of the
present invention.
[0033] In the kit of the present invention, the primers of the primer pair may be included
as a mixture or included separately.
[0034] The kit of the present invention may further include reagents required for PCR and/or
detection of an amplification product in addition to the primer pair. Examples of
such reagents include the aforementioned hybridization primer.
Examples
[0035] Hereafter, the present invention will be explained more specifically with reference
to the following examples.
Example 1: Detection by PCR
[0036] From the first region (nucleotide numbers 5157 to 5201) and the second region (nucleotide
number 5245 to 5276) of the nucleotide sequence of the cryptic plasmid of
Chlamydia trachomatis (SEQ ID NO: 1, GenBank accession number X06707), nucleotide sequences having a high
GC content (48 to 55%) and high Tm value (63 to 65°C (calculated by the nearest neighbor
base pair method)) were selected. That is, 3 types of upstream primers (SEQ ID NOS:
2, 3 and 4) and 2 types of downstream primers (SEQ ID NOS: 5 and 6) were selected
as target binding sequences. Then, oligonucleotides having these target binding sequences
were synthesized as primers.
Table 1
| Upstream (forward) primers: |
| CT-F5157-29: cag tca cac cca aaa gct ctg gga gca tg (SEQ ID NO: 2) |
| CT-F5171-31: agc tct ggg agc atg ttc tta gtc tca gca g (SEQ ID NO: 3) |
| CT-F5171-26: agc tct ggg agc atg ttc tta gtc tc (SEQ ID NO: 4) |
| Downstream (reverse) primers: |
| CT-R5276-25: tcg cgt agg gct tag aat cac ctt c (SEQ ID NO: 5) |
| CT-R5276-31: tcg cgt agg gct tag aat cac ctt ctc gta c (SEQ ID NO: 6) |
[0037] Three kinds of pairs each consisting of a combination of the aforementioned upstream
and downstream amplification primers (SEQ ID NOS: 2-5, 3-5 and 4-6) were used for
PCR. The reaction mixture (25 µL) contained 1 x Gene Taq buffer, 0.625 U of Gene Taq
polymerase (Nippon Gene), 0.2 mM each of dGTP, dCTP, dATP and dUTP, 0.5 µM each of
the upstream and downstream primers, and 2 to 2000 copies of
Chlamydia trachomatis cell genomic DNA (ATCC strain CT-VR878). To examine appropriate reaction temperature,
PCR was performed by using a temperature gradient for the annealing temperature for
the amplification reaction in iCycler (BIO-RAD). The reaction temperatures were as
follows: 95°C for 4 minutes, (95°C for 30 seconds, gradient of 62 to 72°C for 30 seconds,
72°C for 30 seconds) x 50 cycles, and 72°C for 7 minutes. Occurrence of amplification
was confirmed by applying the product to 3% agarose gel electrophoresis.
[0038] Whichever primer pair was used, 2 copies of
Chlamydia trachomatis cell genomic DNA could be detected with a relatively high annealing temperature condition
of 64.0 to 68.2°C.
[0039] The above results showed that the aforementioned primer sequences had superior sensitivity
and specificity and were effective for reducing the reaction time.
Example 2: Detection using two-step PCR
[0040] Among the primer pairs used in Example 1, the primer pairs of SEQ ID NOS: 3-5 and
4-6 were used for two-step PCR. The reaction mixture (25 µL) contained 1 x ΔTth buffer,
0.625 U of ΔTth (TOYOBO), 0.2 mM each of dGTP, dCTP, dATP and dUTP, 0.5 µM each of
the upstream and downstream primers, and 2 to 2000 copies of
Chlamydia trachomatis cell genomic DNA (ATCC strain CT-VR878). The reaction temperatures were as follows:
95°C for 1 minute, (95°C for 15 seconds, 65 or 68°C for 20 seconds) x 2 cycles, and
(90°C for 15 seconds, 65 or 68°C for 20 seconds) x 58 cycles. The reaction was performed
by using a thermal cycler (TaKaRa). Occurrence of amplification was confirmed by applying
the product to 3% agarose gel electrophoresis.
[0041] When the primer pair of SEQ ID NOS: 3-5 was used, 2 copies of
Chlamydia trachomatis cell genomic DNA could be detected with an annealing temperature of 68°C. When the
primer pair of SEQ ID NOS: 4-6 was used, 2 copies of
Chlamydia trachomatis cell genomic DNA could be detected with an annealing temperature of 65°C.
[0042] The above results showed that it was possible to perform two-step PCR in which the
reaction time could be further reduced.
Example 3: Detection using real-time PCR
[0043] Among the primer pairs used in Example 1, the primer pair of SEQ ID NOS: 3-5 was
used for two-step PCR. The reaction mixture (25 µL) contained 1 x ΔTth buffer, 0.625
U of ΔTth (TOYOBO), 0.2 mM each of dGTP, dCTP, dATP and dUTP, 1 µM of the upstream
primer, 0.5 µM of the downstream primer, 0.2 µM of a probe for real-time detection
(5FL-CT-5210-36: 5'-caa agc tag aac aac gcc gcc ttc cat tct tga tgc-3' (SEQ ID NO:
7), c at the 5' end was labeled with a fluorescent dye, type of the marker: BODIPY-FL
(Molecular Probe)), and 2 to 2000 copies of
Chlamydia trachomatis cell genomic DNA (ATCC strain CT-VR878). The reaction temperatures were as follows:
95°C for 1 minute, (95°C for 15 seconds, 65°C for 20 seconds) x 2 cycles, (90°C for
15 seconds, 65°C for 20 seconds) x 58 cycles. The reaction was performed in iCycler
(BIO-RAD). The real-time detection procedure was according to Japanese Patent Laid-open
Publication (Kokai) No.
2001-286300.
[0044] The results are shown in Fig. 1. With the primer pair used in this example, 2 copies
of
Chlamydia trachomatis cell genomic DNA could be detected in real time with an annealing temperature of
65°C.
Industrial Applicability
[0045] The present invention provides a method for quickly detecting
Chlamydia trachomatis with superior sensitivity and specificity.
Sequence Listing
[0046]
<110> Arkray, Inc.
<120> Method for detecting Chlamydia trachomatis and kit therefor
<130> G849-0PC4043
<150> JP 2003-50662
<151> 2003-02-27
<160> 7
<210> 1
<211> 7501
<212> DNA
<213> Chlamydia trachomatis
<400> 1




<210> 2
<211> 29
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 2
cagtcacacc caaaagctct gggagcatg 29
<210> 3
<211> 31
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 3
agctctggga gcatgttctt agtctcagca g 31
<210> 4
<211> 26
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 4 26
agctctggga gcatgttctt agtctc 26
<210> 5
<211> 25
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 5 25
tcgcgtaggg cttagaatca ccttc 25
<210> 6
<211> 31
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 6 31
tcgcgtaggg cttagaatca ccttctcgta c 31
<210> 7
<211> 36
<212> DNA
<213> Artificial Sequence
<220>
<223> probe
<400> 7 36
caaagctaga acaacgccgc cttccattct tgatgc 36
Sequence Listing
[0047]
<110> Arkray, Inc.
<120> Method for detecting Chlamydia trachomatis and kit therefor
<130> G849-0PC4043
<150> JP 2003-50662
<151> 2003-02-27
<160> 7
<210> 1
<211> 7501
<212> DNA
<213> Chlamydia trachomatis
<400> 1




<210> 2
<211> 29
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 2
cagtcacacc caaaagctct gggagcatg 29
<210> 3
<211> 31
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 3
agctctggga gcatgttctt agtctcagca g 31
<210> 4
<211> 26
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 4
agctctggga gcatgttctt agtctc 26
<210> 5
<211> 25
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 5
tcgcgtaggg cttagaatca ccttc 25
<210> 6
<211> 31
<212> DNA
<213> Artificial Sequence
<220>
<223> primer
<400> 6
tcgcgtaggg cttagaatca ccttctcgta c 31
<210> 7
<211> 36
<212> DNA
<213> Artificial Sequence
<220>
<223> probe
<400> 7
caaagctaga acaacgccgc cttccattct tgatgc 36
1. Verfahren zum Nachweisen von Chlamydia trachomatis, umfassend Durchführen einer PCR unter Verwendung von aus einer Probe erhaltener DNA
als Templat und Nachweisen eines Amplifikationsprodukts, wobei ein zur PCR verwendetes
Primerpaar auf Basis der Nukleotidsequenzen der Regionen konzipiert ist, die den Nukleotidnummern
5157 bis 5201 und 5245 bis 5276 in der Nukleotidsequenz von SEQ ID NO:1 entsprechen,
so dass die Nukleotidsequenz zwischen den beiden Regionen amplifiziert werden kann,
und wobei Durchführen der PCR Hybridisierung bei einer Temperatur von 64 bis 68,2°C
umfasst.
2. Verfahren nach Anspruch 1, wobei das Primerpaar aus einem Oligonukleotid mit der Nukleotidsequenz
von SEQ ID NO:2, 3 oder 4 und einem Oligonukleotid mit der Nukleotidsequenz von SEQ
ID NO:5 oder 6 besteht.
3. Verfahren nach Anspruch 2, wobei das Primerpaar aus einem Oligonukleotid mit der Nukleotidsequenz
von SEQ ID NO:3 und einem Oligonukleotid mit der Nukleotidsequenz von SEQ ID NO:5,
oder einem Oligonukleotid mit der Nukleotidsequenz von SEQ ID NO:4 und einem Oligonukleotid
mit der Nukleotidsequenz von SEQ ID NO:6 besteht.
4. Kit zum Nachweis von Chlamydia trachomatis mittels Durchführen einer PCR unter Verwendung von aus einer Probe erhaltener DNA
als Templat, welcher ein Primerpaar umfasst, das auf Basis der Nukleotidsequenzen
der Regionen konzipiert ist, die den Nukleotidnummern 5157 bis 5201 und 5245 bis 5276
in der Nukleotidsequenz von SEQ ID NO:1 entsprechen, so dass die Nukleotidsequenz
zwischen den beiden Regionen amplifiziert werden kann, und wobei Durchführen der PCR
Hybridisierung bei einer Temperatur von 64 bis 68,2°C umfasst.
5. Kit nach Anspruch 4, wobei das Primerpaar aus einem Oligonukleotid mit der Nukleotidsequenz
von SEQ ID NO:2, 3 oder 4 und einem Oligonukleotid mit der Nukleotidsequenz von SEQ
ID NO:5 oder 6 besteht.
6. Kit nach Anspruch 5, wobei das Primerpaar aus einem Oligonukleotid mit der Nukleotidsequenz
von SEQ ID NO:3 und einem Oligonukleotid mit der Nukleotidsequenz von SEQ ID NO:5,
oder einem Oligonukleotid mit der Nukleotidsequenz von SEQ ID NO:4 und einem Oligonukleotid
mit der Nukleotidsequenz von SEQ ID NO:6 besteht.
7. Hybridisierungssonde, enthaltend ein Oligonukleotid, das auf Basis der Nukleotidsequenz
einer Region konzipiert ist, die den Nukleotidnummern 5210 bis 5245 in der Nukleotidsequenz
von SEQ ID NO:1 entspricht, und einen Marker.
1. Procédé de détection du Chlamydia trachomatis comprenant la réalisation d'une amplification en chaîne par polymérase (PCR) en utilisant
un ADN obtenu à partir d'un échantillon comme matrice et la détection d'un produit
d'amplification, dans lequel une paire d'amorces utilisée pour l'amplification en
chaîne par polymérase (PCR) est conçue sur la base des séquences nucléotidiques des
régions correspondant aux nucléotides numéros 5 157 à 5 201 et 5 245 à 5 276 dans
la séquence nucléotidique de SEQ ID N° : 1, de sorte que la séquence nucléotidique
entre les deux régions puisse être amplifiée, et dans lequel la réalisation d'une
amplification en chaîne par polymérase (PCR) comprend l'hybridation à une température
de 64 à 68,2 °C.
2. Procédé selon la revendication 1, dans lequel la paire d'amorces consiste en un oligonucléotide
ayant une séquence nucléotidique de SEQ ID N° : 2, 3 ou 4 et un oligonucléotide ayant
une séquence nucléotidique de SEQ ID N° : 5 ou 6.
3. Procédé selon la revendication 2, dans lequel la paire d'amorces consiste en un oligonucléotide
ayant la séquence nucléotidique de SEQ ID N° : 3 et un oligonucléotide ayant la séquence
nucléotidique de SEQ ID N° : 5, ou un oligonucléotide ayant la séquence nucléotidique
de SEQ ID N° : 4 et un oligonucléotide ayant la séquence nucléotidique de SEQ ID N°
: 6.
4. Trousse de détection du Chlamydia trachomatis par la réalisation d'une amplification en chaîne par polymérase (PCR) en utilisant
un ADN obtenu à partir d'un échantillon comme matrice, qui comprend une paire d'amorces
conçue sur la base des séquences nucléotidiques des régions correspondant aux nucléotides
numéros 5 157 à 5 201 et 5 245 à 5 276 dans la séquence nucléotidique de SEQ ID N°
: 1, de sorte que la séquence nucléotidique entre les deux régions puisse être amplifiée,
et dans laquelle la réalisation d'une amplification en chaîne par polymérase (PCR)
comprend l'hybridation à une température de 64 à 68,2 °C.
5. Trousse selon la revendication 4, dans laquelle la paire d'amorces consiste en un
oligonucléotide ayant une séquence nucléotidique de SEQ ID N° : 2, 3 ou 4 et un oligonucléotide
ayant une séquence nucléotidique de SEQ ID N° : 5 ou 6.
6. Trousse selon la revendication 5, dans laquelle la paire d'amorces consiste en un
oligonucléotide ayant la séquence nucléotidique de SEQ ID N° : 3 et un oligonucléotide
ayant la séquence nucléotidique de SEQ ID N° : 5, ou un oligonucléotide ayant la séquence
nucléotidique de SEQ ID N° : 4 et un oligonucléotide ayant la séquence nucléotidique
de SEQ ID N° : 6.
7. Sonde d'hybridation contenant un oligonucléotide conçue sur la base de la séquence
nucléotidique d'une région correspondant aux nucléotides numéros 5 210 à 5 245 dans
la séquence nucléotidique de SEQ ID N° : 1, et un marqueur.